王丽艳,李广祥,张斌,等. 格栅笼在海岸波浪侵蚀防护中的应用[J]. 水利水运工程学报,2023(2):16-23. doi: 10.12170/20211230004
引用本文: 王丽艳,李广祥,张斌,等. 格栅笼在海岸波浪侵蚀防护中的应用[J]. 水利水运工程学报,2023(2):16-23. doi: 10.12170/20211230004
(WANG Liyan, LI Guangxiang, ZHANG Bin, et al. Analysis of the effect of geogrid cages in protecting coastal soils from wave erosion[J]. Hydro-Science and Engineering, 2023(2): 16-23. (in Chinese)). doi: 10.12170/20211230004
Citation: (WANG Liyan, LI Guangxiang, ZHANG Bin, et al. Analysis of the effect of geogrid cages in protecting coastal soils from wave erosion[J]. Hydro-Science and Engineering, 2023(2): 16-23. (in Chinese)). doi: 10.12170/20211230004

格栅笼在海岸波浪侵蚀防护中的应用

Analysis of the effect of geogrid cages in protecting coastal soils from wave erosion

  • 摘要: 鉴于现有海岸侵蚀防护设施存在造价高、维护成本高、施工难度大、施工工期长、自重大和防护范围有限等问题,提出采用价格低廉、施工方便、自重小、耐腐蚀性强和维护成本低的格栅笼防护海岸侵蚀。格栅笼形状会影响防护海岸侵蚀的效果,针对方形截面、圆形截面和波浪形截面等3种形状格栅笼,基于显式动力学数值分析方法,采用推板造波的方式模拟波浪荷载和SPH光滑粒子的流体动力学方法模拟水体。采用全局属性指派的通用接触模拟水体与格栅笼之间及水体与土体之间的接触,使用罚函数确定格栅笼与海岸土体间的切向接触力,分析波浪荷载下有、无格栅笼及3种形状下的格栅笼及海岸土体的受力与位移随波浪时程的变化特征和峰值特征。结果表明:格栅笼整体受力最大的区域在海平面附近,使用格栅笼可以降低波浪对垂直崖面作用中底部涡流的影响,其中波浪形格栅笼防护海岸侵蚀效果显著。

     

    Abstract: In view of the disadvantages of the current coastal erosion protection: high construction and maintenance cost, difficult construction, long construction period, high self-weight and limited scope of protection, the use of geogrid cage is proposed, with advantages of inexpensive ness, easy construction, low self-weight, high corrosion resistance and low maintenance cost. The shape of the grating cage will influence the effect of coastal erosion stability. Based on the numerical analysis method of explicit dynamics, for the three shapes of grating cages with square section, circular section and wave-shaped section, the wave load is simulated by piston wave making and the hydrodynamic method of SPH smooth particles is used to simulate the water body. The contact between the water body and the geogrid cage and that between the water body and the soil body are simulated by using the global property-assigned generic contact, and the tangential contact force between the geogrid cage and the coastal soil body is determined by using the penalty function. The force and displacement of geogrid cage and coastal soil body under wave load with and without geogrid cage and three shapes are analyzed with wave time history and peak value characteristics. The area with the greatest overall force of the geogrid cage is near the sea level. The use of the geogrid cage can reduce the influence of the wave on the bottom eddy current in the vertical cliff surface, and the wavy geogrid cage has a remarkable effect on the protection of coastal erosion.

     

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